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Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process

The oxidation of metal microparticles (MPs) in a polymer film yields a mesoporous highly-deformable composite polymer for enhancing performance and creating a gapless structure of triboelectric nanogenerators (TENGs). This is a one-step scalable synthesis for developing large-scale, cost-effective,...

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Autores principales: Hwang, Hee Jae, Lee, Younghoon, Lee, Choongyeop, Nam, Youngsuk, Park, Jinhyoung, Choi, Dukhyun, Kim, Dongseob
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315570/
https://www.ncbi.nlm.nih.gov/pubmed/30544941
http://dx.doi.org/10.3390/mi9120656
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author Hwang, Hee Jae
Lee, Younghoon
Lee, Choongyeop
Nam, Youngsuk
Park, Jinhyoung
Choi, Dukhyun
Kim, Dongseob
author_facet Hwang, Hee Jae
Lee, Younghoon
Lee, Choongyeop
Nam, Youngsuk
Park, Jinhyoung
Choi, Dukhyun
Kim, Dongseob
author_sort Hwang, Hee Jae
collection PubMed
description The oxidation of metal microparticles (MPs) in a polymer film yields a mesoporous highly-deformable composite polymer for enhancing performance and creating a gapless structure of triboelectric nanogenerators (TENGs). This is a one-step scalable synthesis for developing large-scale, cost-effective, and light-weight mesoporous polymer composites. We demonstrate mesoporous aluminum oxide (Al(2)O(3)) polydimethylsiloxane (PDMS) composites with a nano-flake structure on the surface of Al(2)O(3) MPs in pores. The porosity of mesoporous Al(2)O(3)-PDMS films reaches 71.35% as the concentration of Al MPs increases to 15%. As a result, the film capacitance is enhanced 1.8 times, and TENG output performance is 6.67-times greater at 33.3 kPa and 4 Hz. The pressure sensitivity of 6.71 V/kPa and 0.18 μA/kPa is determined under the pressure range of 5.5–33.3 kPa. Based on these structures, we apply mesoporous Al(2)O(3)-PDMS film to a gapless TENG structure and obtain a linear pressure sensitivity of 1.00 V/kPa and 0.02 μA/kPa, respectively. Finally, we demonstrate self-powered safety cushion sensors for monitoring human sitting position by using gapless TENGs, which are developed with a large-scale and highly-deformable mesoporous Al(2)O(3)-PDMS film with dimensions of 6 × 5 pixels (33 × 27 cm(2)).
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spelling pubmed-63155702019-01-10 Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process Hwang, Hee Jae Lee, Younghoon Lee, Choongyeop Nam, Youngsuk Park, Jinhyoung Choi, Dukhyun Kim, Dongseob Micromachines (Basel) Article The oxidation of metal microparticles (MPs) in a polymer film yields a mesoporous highly-deformable composite polymer for enhancing performance and creating a gapless structure of triboelectric nanogenerators (TENGs). This is a one-step scalable synthesis for developing large-scale, cost-effective, and light-weight mesoporous polymer composites. We demonstrate mesoporous aluminum oxide (Al(2)O(3)) polydimethylsiloxane (PDMS) composites with a nano-flake structure on the surface of Al(2)O(3) MPs in pores. The porosity of mesoporous Al(2)O(3)-PDMS films reaches 71.35% as the concentration of Al MPs increases to 15%. As a result, the film capacitance is enhanced 1.8 times, and TENG output performance is 6.67-times greater at 33.3 kPa and 4 Hz. The pressure sensitivity of 6.71 V/kPa and 0.18 μA/kPa is determined under the pressure range of 5.5–33.3 kPa. Based on these structures, we apply mesoporous Al(2)O(3)-PDMS film to a gapless TENG structure and obtain a linear pressure sensitivity of 1.00 V/kPa and 0.02 μA/kPa, respectively. Finally, we demonstrate self-powered safety cushion sensors for monitoring human sitting position by using gapless TENGs, which are developed with a large-scale and highly-deformable mesoporous Al(2)O(3)-PDMS film with dimensions of 6 × 5 pixels (33 × 27 cm(2)). MDPI 2018-12-11 /pmc/articles/PMC6315570/ /pubmed/30544941 http://dx.doi.org/10.3390/mi9120656 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hwang, Hee Jae
Lee, Younghoon
Lee, Choongyeop
Nam, Youngsuk
Park, Jinhyoung
Choi, Dukhyun
Kim, Dongseob
Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title_full Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title_fullStr Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title_full_unstemmed Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title_short Mesoporous Highly-Deformable Composite Polymer for a Gapless Triboelectric Nanogenerator via a One-Step Metal Oxidation Process
title_sort mesoporous highly-deformable composite polymer for a gapless triboelectric nanogenerator via a one-step metal oxidation process
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315570/
https://www.ncbi.nlm.nih.gov/pubmed/30544941
http://dx.doi.org/10.3390/mi9120656
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